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Experiments on two-phase flow in hydraulic jump on pebbled rough bed:Part 1–Turbulence properties and particle chord time and length
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作者 Farhad Bahmanpouri Carlo Gualtieri Hubert Chanson 《Water Science and Engineering》 EI CAS CSCD 2023年第4期359-368,共10页
This study reported and discussed turbulence characteristics,such as turbulence intensity,correlation time scales,and advective length scales.The characteristic air–water time scale,including the particle chord time ... This study reported and discussed turbulence characteristics,such as turbulence intensity,correlation time scales,and advective length scales.The characteristic air–water time scale,including the particle chord time and length and their probability density functions(PDFs),was investigated.The results demonstrated that turbulence intensity was relatively greater on a rough bed in the roller length,whereas further downstream,the decay rate was higher.In addition,the relationship between turbulence intensity and dimensionless bubble count rate reflected an increase in turbulence intensity associated with the number of entrained particles.Triple decomposition analysis(TDA)was performed to determine the contributions of slow and fast turbulent components.The TDA results indicated that,regardless of bed type and inflow conditions,the sum of the band-pass(T'_(u))and high-pass(T″_(u))filtered turbulence intensities was equal to the turbulence intensity of the raw signal data(T_(u)).T″_(u) highlighted a higher turbulence intensity and larger vorticities on the rough bed for an identical inflow Froude number.Additional TDA results were presented in terms of the interfacial velocity,auto-and cross-correlation time scales,and longitudinal advection length scale,with the effects of low-and high-frequency signal components on each highlighted parameter.The analysis of the air chord time indicated an increase in the proportion of small bubbles moving downstream.The second part of this research focused on the basic properties of particle grouping and clustering. 展开更多
关键词 hydraulic jump Pebbled rough bed Turbulence intensity Particle chord time Two-phase flow
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Experiments on two-phase flow in hydraulic jump on pebbled rough bed:Part 2–Bubble clustering
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作者 Farhad Bahmanpouri Carlo Gualtieri Hubert Chanson 《Water Science and Engineering》 EI CAS CSCD 2023年第4期369-380,共12页
A survey on bubble clustering in air–water flow processes may provide significant insights into turbulent two-phaseflow.These processes have been studied in plunging jets,dropshafts,and hydraulic jumps on a smooth bed.... A survey on bubble clustering in air–water flow processes may provide significant insights into turbulent two-phaseflow.These processes have been studied in plunging jets,dropshafts,and hydraulic jumps on a smooth bed.As a first attempt,this study examined the bubble clustering process in hydraulic jumps on a pebbled rough bed using experimental data for 1.70<Fr_(1)<2.84(with Fr_(1) denoting the inflow Froude number).The basic properties of particle grouping and clustering,including the number of clusters,the dimensionless number of clusters per second,the percentage of clustered bubbles,and the number of bubbles per cluster,were analyzed based on two criteria.For both criteria,the maximum cluster count rate was greater on the rough bed than on the smooth bed,suggesting greater interactions between turbulence and bubbly flow on the rough bed.The results were consistent with the longitudinal distribution of the interfacial velocity using one of the criteria.In addition,the clustering process was analyzed using a different approach:the interparticle arrival time of bubbles.The comparison showed that the bubbly flow structure had a greater density of bubbles per unitflux on the rough bed than on the smooth bed.Bed roughness was the dominant parameter close to the jump toe.Further downstream,Fr_(1) predominated.Thus,the rate of bubble density decreased more rapidly for the hydraulic jump with the lowest Fr_(1). 展开更多
关键词 hydraulic jump Pebbled rough bed Clustering analysis Interparticle arrival time Two-phase flow
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水跃跃长理论研究 被引量:2
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作者 沈波 《重庆交通学院学报》 1998年第3期98-101,共4页
通过一定假定建立了水跃跃长理论公式,并与经验公式计算比较.
关键词 水跃 跃长 动量修正系数 时间 主流
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对水闸设计几个问题的讨论 被引量:8
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作者 茹建辉 《广东水利水电》 2018年第3期1-10,共10页
该作者在学习2016版《水闸设计规范》后,提出以下意见,并结合自身工作实践,提出相应建议:应修改消力池范围定义免至引起设计慨念混乱;应明确消力池和海漫各自的功能,并严格控制海漫上的流速使之与下游河道流场平顺衔接,宜用扩散反坡海漫... 该作者在学习2016版《水闸设计规范》后,提出以下意见,并结合自身工作实践,提出相应建议:应修改消力池范围定义免至引起设计慨念混乱;应明确消力池和海漫各自的功能,并严格控制海漫上的流速使之与下游河道流场平顺衔接,宜用扩散反坡海漫;闸孔开启应尽可能接近设计的二维水力学条件;地基的防渗和排水应当作一个完整的系统工程考虑而不应割裂单独研究;反滤排水孔过水面积应与透出的渗流量相应应;现行闸基抗滑稳定安全系数取值偏小,且判断基础不均沉降的方法不合理;软土地基侧向变形对地基沉降的影响不能忽略。文中意见和建议可供水闸设计人员和规范修编工作者参考。 展开更多
关键词 消力池长度 控制海漫流速 斜坡水跃 渗流控制 反滤排水孔 基础抗滑稳定 地基沉降计算
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突扩式消力池R型水跃的长度特征分析
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作者 傅铭焕 梁维军 +3 位作者 陈炳斌 洪银有 卢志男 张志昌 《陕西水利》 2019年第2期7-11,共5页
根据已有文献对突扩式消力池R型水跃的试验成果,分析突扩式消力池R型水跃主要特征长度—回流扩散段水平长度、射流长度及旋滚长度的变化规律。研究表明,回流段水平长度是扩散出口断面弗劳德数和消力池上下游断面宽度差的函数;相对射流... 根据已有文献对突扩式消力池R型水跃的试验成果,分析突扩式消力池R型水跃主要特征长度—回流扩散段水平长度、射流长度及旋滚长度的变化规律。研究表明,回流段水平长度是扩散出口断面弗劳德数和消力池上下游断面宽度差的函数;相对射流长度随出流扩散断面弗劳德数的增大而增大,随消力池突扩比的增大而减下;水跃旋滚长度随扩散出口断面弗劳德数和扩散出口断面水深的增大而增大,随消力池突扩比、跃后断面水深与扩散出口断面水深比的增大而减小。提出了R型水跃射流长度及旋滚长度的计算公式,并用已有文献资料进行了验证。 展开更多
关键词 突扩式消力池 R型水跃 回流扩散段水平长度 射流长度 旋滚长度 突扩比
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平底矩形断面渐扩散水跃跃后水深的计算
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作者 傅铭焕 惠祥明 +3 位作者 吴留伟 田甜 侯毅 卢志男 《浙江水利水电学院学报》 2018年第4期18-23,共6页
通过绕流阻力理论,建立了渐扩式消力池水跃段水体新的受力方程,提出了渐扩散水跃跃后水深新的计算方法.渐扩式消力池综合绕流阻力系数是跃前断面弗劳德数、水跃共轭水深比及水跃旋滚末端断面和水跃跃前断面宽度比的函数.相对综合绕流阻... 通过绕流阻力理论,建立了渐扩式消力池水跃段水体新的受力方程,提出了渐扩散水跃跃后水深新的计算方法.渐扩式消力池综合绕流阻力系数是跃前断面弗劳德数、水跃共轭水深比及水跃旋滚末端断面和水跃跃前断面宽度比的函数.相对综合绕流阻力系数是跃前断面弗劳德数的函数,并随跃前断面弗劳德数的增大而减小.得出了渐扩式消力池综合绕流阻力系数、跃后水深及水跃旋滚长度新的计算公式,并通过实际工程和已有公式对其适用性及通用性进行了验证. 展开更多
关键词 渐扩式消力池 渐扩散水跃 绕流阻力系数 跃后水深 旋滚长度
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